首页> 美国卫生研究院文献>The Journal of Neuroscience >FMRP Regulates the Transition from Radial Glial Cells to Intermediate Progenitor Cells during Neocortical Development
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FMRP Regulates the Transition from Radial Glial Cells to Intermediate Progenitor Cells during Neocortical Development

机译:FMRP调节新皮层发育过程中从Rad神经胶质细胞向中间祖细胞的过渡

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摘要

During vertebrate cortical neurogenesis, radial glial cells (RGCs) serve as neural stem cells that generate neurons directly or indirectly through intermediate progenitor cells (IPCs). The transition from RGCs to IPCs is a key step in determining overall neuronal production and may underlie evolutionary expansion of the cerebral cortex. Here we show that this transition is controlled by fragile X mental retardation protein (FMRP), an RNA-binding protein whose deficiency causes fragile X syndrome. Analysis of mouse embryos electroporated with FMRP small hairpin RNA and knock-out mouse embryos lacking FMRP reveals that specific loss of FMRP causes depletion of neocortical RGCs due to an RGC-to-IPC cell fate change. The RGC depletion is associated with altered F-actin organization and can be largely rescued by overexpressing profilin 1 (Pfn1), a core actin regulatory protein promoting F-actin formation. Our data suggest that FMRP suppresses the transition from RGCs to IPCs during neocortical development by an actin-dependent mechanism.
机译:在脊椎动物皮质神经发生过程中,放射状神经胶质细胞(RGC)充当神经干细胞,通过中间祖细胞(IPC)直接或间接产生神经元。从RGC到IPC的过渡是确定总体神经元产生的关键步骤,可能是大脑皮层进化扩展的基础。在这里,我们显示此过渡受脆弱的X智力低下蛋白(FMRP)控制,FMRP是一种RNA结合蛋白,其缺陷会导致脆弱的X综合征。对用FMRP小发夹RNA电穿孔的小鼠胚胎和缺乏FMRP的基因敲除小鼠胚胎进行的分析表明,由于RGC到IPC细胞的命运变化,FMRP的特异性缺失会导致新皮层RGC耗竭。 RGC耗竭与F-肌动蛋白的组织改变有关,可以通过过度表达profilin 1(Pfn1)来挽救,profilin 1是促进F-肌动蛋白形成的核心肌动蛋白调节蛋白。我们的数据表明,FMRP通过依赖肌动蛋白的机制抑制了新皮质发育过程中从RGC过渡到IPC。

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